Development and validation of anthropometric-based fat-mass prediction equations using air displacement plethysmography in Mexican infants

被引:0
|
作者
Rodriguez-Cano, Ameyalli M. [1 ]
Pina-Ramirez, Omar [2 ]
Rodriguez-Hernandez, Carolina [1 ]
Mier-Cabrera, Jennifer [1 ]
Villalobos-Alcazar, Gicela [3 ]
Estrada-Gutierrez, Guadalupe [4 ]
Cardona-Perez, Arturo [5 ]
Coronado-Zarco, Alejandra [6 ]
Perichart-Perera, Otilia [1 ]
机构
[1] Inst Nacl Perinatol Isidro Espinosa Reyes, Nutr & Bioprogramming Coordinat, Mexico City 11000, Mexico
[2] Inst Nacl Perinatol Isidro Espinosa Reyes, Bioinformat & Stat Anal Dept, Mexico City 11000, Mexico
[3] Inst Nacl Perinatol Isidro Espinosa Reyes, Neonatal Ward, Mexico City 11000, Mexico
[4] Inst Nacl Perinatol Isidro Espinosa Reyes, Res Div, Mexico City 11000, Mexico
[5] Inst Nacl Perinatol Isidro Espinosa Reyes, Mexico City 11000, Mexico
[6] Inst Nacl Perinatol Isidro Espinosa Reyes, Neonatol Div, Mexico City 11000, Mexico
关键词
BODY-COMPOSITION ASSESSMENT; BIOELECTRICAL-IMPEDANCE ANALYSIS; SKINFOLD THICKNESS; EARLY GROWTH; CHILDREN; CHILDHOOD; ADIPOSITY; BIRTH; CIRCUMFERENCE; PERCENTAGE;
D O I
10.1038/s41430-023-01285-9
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Background/ObjectivesFat-mass (FM) assessment since birth using valid methodologies is crucial since excessive adiposity represents a risk factor for adverse metabolic outcomes. Aim: To develop infant FM prediction equations using anthropometry and validate them against air-displacement plethysmography (ADP).Subjects/MethodsClinical, anthropometric (weight, length, body-mass index -BMI-, circumferences, and skinfolds), and FM (ADP) data were collected from healthy-term infants at 1 (n = 133), 3 (n = 105), and 6 (n = 101) months enrolled in the OBESO perinatal cohort (Mexico City). FM prediction models were developed in 3 steps: 1) Variable Selection (LASSO regression), 2) Model behavior evaluation (12-fold cross-validation, using Theil-Sen regressions), and 3) Final model evaluation (Bland-Altman plots, Deming regression).ResultsRelevant variables in the FM prediction models included BMI, circumferences (waist, thigh, and calf), and skinfolds (waist, triceps, subscapular, thigh, and calf). The R-2 of each model was 1 M: 0.54, 3 M: 0.69, 6 M: 0.63. Predicted FM showed high correlation values (r >= 0.73, p < 0.001) with FM measured with ADP. There were no significant differences between predicted vs measured FM (1 M: 0.62 vs 0.6; 3 M: 1.2 vs 1.35; 6 M: 1.65 vs 1.76 kg; p > 0.05). Bias were: 1 M -0.021 (95%CI: -0.050 to 0.008), 3 M: 0.014 (95%CI: 0.090-0.195), 6 M: 0.108 (95%CI: 0.046-0.169).ConclusionAnthropometry-based prediction equations are inexpensive and represent a more accessible method to estimate body composition. The proposed equations are useful for evaluating FM in Mexican infants.
引用
收藏
页码:748 / 756
页数:9
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